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Monolithic calcium phosphate/poly(lactic acid) composite versus calcium phosphate-coated poly(lactic acid) for support of osteogenic differentiation of human mesenchymal stromal cells

机译:整体磷酸钙/聚乳酸复合材料与磷酸钙涂层的聚乳酸相比支持人间充质基质细胞的成骨分化

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摘要

Calcium phosphates (CaPs), extensively used synthetic bone graft substitutes, are often combined with other materials with the aim to overcome issues related to poor mechanical properties of most CaP ceramics. Thin ceramic coatings on metallic implants and polymer-ceramic composites are examples of such hybrid materials. Both the properties of the CaP used and the method of incorporation into a hybrid structure are determinant for the bioactivity of the final construct. In the present study, a monolithic composite comprising nano-sized CaP and poly(lactic acid) (PLA) and a CaP-coated PLA were comparatively investigated for their ability to support proliferation and osteogenic differentiation of bone marrow-derived human mesenchymal stromal cells (hMSCs). Both, the PLA/CaP composite, produced using physical mixing and extrusion and CaP-coated PLA, resulting from a biomimetic coating process at near-physiological conditions, supported proliferation of hMSCs with highest rates at PLA/CaP composite. Enzymatic alkaline phosphatase activity as well as the mRNA expression of bone morphogenetic protein-2, osteopontin and osteocalcin were higher on the composite and coated polymer as compared to the PLA control, while no significant differences were observed between the two methods of combining CaP and PLA. The results of this study confirmed the importance of CaP in osteogenic differentiation while the exact properties and the method of incorporation into the hybrid material played a less prominent role.
机译:磷酸钙(CaPs)是广泛使用的合成骨移植替代物,通常与其他材料结合使用,目的是克服与大多数CaP陶瓷较差的机械性能有关的问题。金属植入物和聚合物-陶瓷复合材料上的薄陶瓷涂层就是这种混合材料的例子。所用CaP的性质和掺入杂化结构的方法均决定最终构建体的生物活性。在本研究中,比较研究了由纳米级CaP和聚乳酸(PLA)组成的整体复合材料以及CaP涂层的PLA支持骨髓来源的人间充质基质细胞增殖和成骨分化的能力( hMSC)。使用物理混合和挤出生产的PLA / CaP复合材料以及通过在近乎生理条件下的仿生涂层工艺产生的CaP涂层的PLA均支持hMSC在PLA / CaP复合材料中以最高的速率增殖。复合材料和包被的聚合物的酶碱性磷酸酶活性以及骨形态发生蛋白2,骨桥蛋白和骨钙素的mRNA表达与PLA对照相比更高,而在CaP和PLA结合的两种方法之间没有观察到显着差异。 。这项研究的结果证实了CaP在成骨分化中的重要性,而其确切的特性和掺入杂化材料的方法则没有那么重要。

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